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关于在声化学过程中使用环流反应器的评论。

Comments on the use of loop reactors in sonochemical processes.

作者信息

Vinatoru M, Mason Timothy

机构信息

University POLITEHNICA of Bucharest, Faculty of Applied Chemistry and Materials Science, Spl. Independentei nr. 313, Sector 6, Bucharest RO-060042, Romania; SonoChem Centre Ltd, Bank Gallery, High Street, Kenilworth, England CV8 1LY, United Kingdom.

SonoChem Centre Ltd, Bank Gallery, High Street, Kenilworth, England CV8 1LY, United Kingdom.

出版信息

Ultrason Sonochem. 2017 Nov;39:240-242. doi: 10.1016/j.ultsonch.2017.04.033. Epub 2017 Apr 24.

DOI:10.1016/j.ultsonch.2017.04.033
PMID:28732941
Abstract

For sonochemical processing on an industrial scale the traditional choice is either a batch or flow system. The former is straightforward in concept but it requires large scale powerful ultrasonic transducers capable of delivering high intensity ultrasound to large volumes of liquid. Unfortunately at the moment the cost and problems involved in building very large sonication devices for batch processes cannot justify the replacement of existing industrial processes. For this reason most sonochemists prefer some form of flow system where small quantities of reagents can be treated as they are pumped from a large vat of reagents through a smaller sonochemical reactor where high intensity ultrasound can be applied. In this short paper we draw attention to a problem which seems common in a number of papers dealing with such flow systems - a confusion between the terms continuous reactor and loop reactor. Further we emphasise the importance of calculating the actual amount of ultrasonic processing experienced by the reaction mixture within the sonication zone of a loop reactor during its operation. The parameters required for such a calculation are: ultrasonic processor volume (R in L), pump flow rate (F in L/min), stock solution volume in the reservoir (S in L) and the overall system operating time (S in min).

摘要

对于工业规模的声化学处理,传统的选择是间歇式或连续流动系统。前者概念简单,但需要大型强力超声换能器,能够向大量液体传递高强度超声。不幸的是,目前制造用于间歇式工艺的非常大型的超声处理设备所涉及的成本和问题,无法证明现有工业工艺被取代是合理的。因此,大多数声化学家更喜欢某种形式的连续流动系统,在这种系统中,少量试剂在从一大桶试剂泵入较小的声化学反应器时可以得到处理,在该反应器中可以施加高强度超声。在这篇短文中,我们提请注意一个在许多处理此类连续流动系统的论文中似乎很常见的问题——连续反应器和循环反应器这两个术语之间的混淆。此外,我们强调计算循环反应器在运行期间反应混合物在超声处理区内实际经历的超声处理量的重要性。进行这种计算所需的参数是:超声处理器体积(R,单位为升)、泵流速(F,单位为升/分钟)、储液器中储备溶液体积(S,单位为升)以及整个系统运行时间(S,单位为分钟)。

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